Hyperpolarization of membrane potential reveals prominent spikelets at

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Feed-forward recruitment of electrical synapses enhances synchronous spiking in the mouse cerebellar cortex

Hyperpolarization of membrane potential reveals prominent spikelets at

Frontiers On the Diverse Functions of Electrical Synapses

The dynamic range of voltage-dependent gap junction signaling is maintained by Ih-induced membrane potential depolarization

Functional characterization of spikelet activity in the primary visual cortex - Scholl - 2015 - The Journal of Physiology - Wiley Online Library

Action Potentials – Human Physiology

In vivo dual intra- and extracellular recordings suggest bidirectional coupling between CA1 pyramidal neurons

Dendritic Na+ spikes enable cortical input to drive action potential output from hippocampal CA2 pyramidal neurons

Dendritic Na+ spikes enable cortical input to drive action potential output from hippocampal CA2 pyramidal neurons

SPW-R-coupled action potentials are antidromic spikes. (A Upper) Action

Theta oscillations coincide with sustained hyperpolarization in CA3 pyramidal cells, underlying decreased firing

The spikelet hyperpolarizing phase is determinant for GJ-mediated spike

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